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首页> 外文期刊>Journal of Biotechnology >Evaluation of parallel milliliter-scale stirred-tank bioreactors for the study of biphasic whole-cell biocatalysis with ionic liquids
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Evaluation of parallel milliliter-scale stirred-tank bioreactors for the study of biphasic whole-cell biocatalysis with ionic liquids

机译:平行毫升规模的搅拌釜式生物反应器用于离子液体双相全细胞生物催化研究的评估

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摘要

As clear structure-activity relationships are still rare for ionic liquids, preliminary experiments are necessary for the process development of biphasic whole-cell processes involving these solvents. To reduce the time investment and the material costs, the process development of such biphasic reaction systems would profit from a small-scale high-throughput platform. Exemplarily, the reduction of 2-octanone to (R)-2-octanol by a recombinant Escherichia coli in a biphasic ionic liquid/water system was studied in a miniaturized stirred-tank bioreactor system allowing the parallel operation of up to 48 reactors at the mL-scale. The results were compared to those obtained in a 20-fold larger stirred-tank reactor. The maximum local energy dissipation was evaluated at the larger scale and compared to the data available for the small-scale reactors, to verify if similar mass transfer could be obtained at both scales. Thereafter, the reaction kinetics and final conversions reached in different reactions setups were analysed. The results were in good agreement between both scales for varying ionic liquids and for ionic liquid volume fractions up to 40%. The parallel bioreactor system can thus be used for the process development of the majority of biphasic reaction systems involving ionic liquids, reducing the time and resource investment during the process development of this type of applications. (C) 2011 Published by Elsevier B.V.
机译:由于对于离子液体仍然缺乏清晰的结构-活性关系,因此初步实验对于涉及这些溶剂的双相全细胞过程的过程开发是必要的。为了减少时间投资和材料成本,这种双相反应系统的工艺开发将从小型高通量平台中受益。示例性地,在小型搅拌釜式生物反应器系统中研究了在双相离子液体/水系统中重组大肠杆菌将2-辛酮还原为(R)-2-辛醇的过程,该系统允许在反应釜中最多运行48个反应器。毫升规模。将结果与在20倍大的搅拌釜反应器中获得的结果进行比较。在较大规模上评估了最大局部能量耗散,并将其与可用于小型反应堆的数据进行了比较,以验证是否可以在两个规模上获得相似的传质。此后,分析在不同反应装置中达到的反应动力学和最终转化率。对于不同的离子液体和离子液体体积分数最高为40%的两种刻度,结果均具有良好的一致性。因此,平行生物反应器系统可用于大多数涉及离子液体的双相反应系统的工艺开发,从而减少了此类应用程序开发过程中的时间和资源投资。 (C)2011由Elsevier B.V.发布

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